首页> 外文期刊>Catena: An Interdisciplinary Journal of Soil Science Hydrology-Geomorphology Focusing on Geoecology and Landscape Evolution >Strength anisotropy of Malan loess and the implications for the formation of loess walls and columns
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Strength anisotropy of Malan loess and the implications for the formation of loess walls and columns

机译:马兰黄土强度各向异性以及对黄土墙和柱形成的影响

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摘要

Loess is widely distributed in China, with the Loess Plateau having the largest global bulk accumulation. The micro-scale loess landforms are featured by loess walls and loess columns, which can stand vertically for many years. The main failure modes of loess to form these vertical features are toppling and falling along a rupture surface of high angles. These failure modes are attributed to loess strength behavior, which in turn are dominated by the inner structure of loess soil. Bearing this in mind, we sought to conduct a series of mechanical tests on both vertical and horizontal loess samples. These included tension as well as uniaxial and triaxial compression tests. It is found that Malan loess had strong anisotropy in terms of failure pattern and strength. The vertical specimens possess strengths 1.3 times greater than those of horizontal specimens, and tend to fail at high rupture angles of approximately 85 degrees under uniaxial and triaxial compression conditions. These findings were in good agreement with the vertiloess structure, where the vertically aligned strong units resulting from inter-particle bonding and close compaction make the loess behave strongly in the vertical direction, while the vertically aligned weak segments are responsible for the high rupture angles. These findings explain the formation of deep vertical cracks which mobilize loess toppling and falling and shape the loess mass into columns and walls.
机译:黄土在中国广泛分布,黄土高原具有最大的全球散装积累。微级黄土地貌由黄土墙壁和黄土柱提供,可垂直持续多年。黄土的主要故障模式形成这些垂直特征是沿着高角度的破裂表面浇灌和落下。这些故障模式归因于黄土强度行为,这反过来是由黄土土壤的内部结构主导。考虑到这一点,我们试图在垂直和水平的黄土样本上进行一系列机械测试。这些包括张力以及单轴和三轴压缩测试。结果发现,在失败模式和强度方面,马兰黄土具有强大的各向异性。垂直试样具有比水平标本大的1.3倍的强度,并且在单轴和三轴压缩条件下在大约85度的高断裂角度下降。这些发现与Vertiloess结构非常一致,其中由颗粒间键合和闭合压实产生的垂直对准的强单元使黄土在垂直方向上强烈表现,而垂直对准的弱区段负责高断裂角度。这些发现解释了深度垂直裂缝的形成,可使黄土推进和落下并将黄土块落入柱和墙壁。

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